6b78cb763c0bfe4574dd023aefa611c690505628
[openwrt/staging/lynxis/omap.git] / package / iwinfo / src / iwinfo_lua.c
1 /*
2 * iwinfo - Wireless Information Library - Lua Bindings
3 *
4 * Copyright (C) 2009 Jo-Philipp Wich <xm@subsignal.org>
5 *
6 * The iwinfo library is free software: you can redistribute it and/or
7 * modify it under the terms of the GNU General Public License version 2
8 * as published by the Free Software Foundation.
9 *
10 * The iwinfo library is distributed in the hope that it will be useful,
11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
13 * See the GNU General Public License for more details.
14 *
15 * You should have received a copy of the GNU General Public License along
16 * with the iwinfo library. If not, see http://www.gnu.org/licenses/.
17 */
18
19 #include "iwinfo/lua.h"
20
21
22 /* Determine type */
23 static int iwinfo_L_type(lua_State *L)
24 {
25 const char *ifname = luaL_checkstring(L, 1);
26 const char *type = iwinfo_type(ifname);
27
28 if (type)
29 lua_pushstring(L, type);
30 else
31 lua_pushnil(L);
32
33 return 1;
34 }
35
36 /* Shutdown backends */
37 static int iwinfo_L__gc(lua_State *L)
38 {
39 iwinfo_finish();
40 return 0;
41 }
42
43 /*
44 * Build a short textual description of the crypto info
45 */
46
47 static char * iwinfo_crypto_print_ciphers(int ciphers)
48 {
49 static char str[128] = { 0 };
50 char *pos = str;
51
52 if (ciphers & IWINFO_CIPHER_WEP40)
53 pos += sprintf(pos, "WEP-40, ");
54
55 if (ciphers & IWINFO_CIPHER_WEP104)
56 pos += sprintf(pos, "WEP-104, ");
57
58 if (ciphers & IWINFO_CIPHER_TKIP)
59 pos += sprintf(pos, "TKIP, ");
60
61 if (ciphers & IWINFO_CIPHER_CCMP)
62 pos += sprintf(pos, "CCMP, ");
63
64 if (ciphers & IWINFO_CIPHER_WRAP)
65 pos += sprintf(pos, "WRAP, ");
66
67 if (ciphers & IWINFO_CIPHER_AESOCB)
68 pos += sprintf(pos, "AES-OCB, ");
69
70 if (ciphers & IWINFO_CIPHER_CKIP)
71 pos += sprintf(pos, "CKIP, ");
72
73 if (!ciphers || (ciphers & IWINFO_CIPHER_NONE))
74 pos += sprintf(pos, "NONE, ");
75
76 *(pos - 2) = 0;
77
78 return str;
79 }
80
81 static char * iwinfo_crypto_print_suites(int suites)
82 {
83 static char str[64] = { 0 };
84 char *pos = str;
85
86 if (suites & IWINFO_KMGMT_PSK)
87 pos += sprintf(pos, "PSK/");
88
89 if (suites & IWINFO_KMGMT_8021x)
90 pos += sprintf(pos, "802.1X/");
91
92 if (!suites || (suites & IWINFO_KMGMT_NONE))
93 pos += sprintf(pos, "NONE/");
94
95 *(pos - 1) = 0;
96
97 return str;
98 }
99
100 static char * iwinfo_crypto_desc(struct iwinfo_crypto_entry *c)
101 {
102 static char desc[512] = { 0 };
103
104 if (c)
105 {
106 if (c->enabled)
107 {
108 /* WEP */
109 if (c->auth_algs && !c->wpa_version)
110 {
111 if ((c->auth_algs & IWINFO_AUTH_OPEN) &&
112 (c->auth_algs & IWINFO_AUTH_SHARED))
113 {
114 sprintf(desc, "WEP Open/Shared (%s)",
115 iwinfo_crypto_print_ciphers(c->pair_ciphers));
116 }
117 else if (c->auth_algs & IWINFO_AUTH_OPEN)
118 {
119 sprintf(desc, "WEP Open System (%s)",
120 iwinfo_crypto_print_ciphers(c->pair_ciphers));
121 }
122 else if (c->auth_algs & IWINFO_AUTH_SHARED)
123 {
124 sprintf(desc, "WEP Shared Auth (%s)",
125 iwinfo_crypto_print_ciphers(c->pair_ciphers));
126 }
127 }
128
129 /* WPA */
130 else if (c->wpa_version)
131 {
132 switch (c->wpa_version) {
133 case 3:
134 sprintf(desc, "mixed WPA/WPA2 %s (%s)",
135 iwinfo_crypto_print_suites(c->auth_suites),
136 iwinfo_crypto_print_ciphers(
137 c->pair_ciphers & c->group_ciphers));
138 break;
139
140 case 2:
141 sprintf(desc, "WPA2 %s (%s)",
142 iwinfo_crypto_print_suites(c->auth_suites),
143 iwinfo_crypto_print_ciphers(
144 c->pair_ciphers & c->group_ciphers));
145 break;
146
147 case 1:
148 sprintf(desc, "WPA %s (%s)",
149 iwinfo_crypto_print_suites(c->auth_suites),
150 iwinfo_crypto_print_ciphers(
151 c->pair_ciphers & c->group_ciphers));
152 break;
153 }
154 }
155 else
156 {
157 sprintf(desc, "None");
158 }
159 }
160 else
161 {
162 sprintf(desc, "None");
163 }
164 }
165 else
166 {
167 sprintf(desc, "Unknown");
168 }
169
170 return desc;
171 }
172
173 /* Build Lua table from crypto data */
174 static void iwinfo_L_cryptotable(lua_State *L, struct iwinfo_crypto_entry *c)
175 {
176 int i, j;
177
178 lua_newtable(L);
179
180 lua_pushboolean(L, c->enabled);
181 lua_setfield(L, -2, "enabled");
182
183 lua_pushstring(L, iwinfo_crypto_desc(c));
184 lua_setfield(L, -2, "description");
185
186 lua_pushboolean(L, (c->enabled && !c->wpa_version));
187 lua_setfield(L, -2, "wep");
188
189 lua_pushinteger(L, c->wpa_version);
190 lua_setfield(L, -2, "wpa");
191
192 lua_newtable(L);
193 for (i = 0, j = 1; i < 8; i++)
194 {
195 if (c->pair_ciphers & (1 << i))
196 {
197 lua_pushstring(L, IWINFO_CIPHER_NAMES[i]);
198 lua_rawseti(L, -2, j++);
199 }
200 }
201 lua_setfield(L, -2, "pair_ciphers");
202
203 lua_newtable(L);
204 for (i = 0, j = 1; i < 8; i++)
205 {
206 if (c->group_ciphers & (1 << i))
207 {
208 lua_pushstring(L, IWINFO_CIPHER_NAMES[i]);
209 lua_rawseti(L, -2, j++);
210 }
211 }
212 lua_setfield(L, -2, "group_ciphers");
213
214 lua_newtable(L);
215 for (i = 0, j = 1; i < 8; i++)
216 {
217 if (c->auth_suites & (1 << i))
218 {
219 lua_pushstring(L, IWINFO_KMGMT_NAMES[i]);
220 lua_rawseti(L, -2, j++);
221 }
222 }
223 lua_setfield(L, -2, "auth_suites");
224
225 lua_newtable(L);
226 for (i = 0, j = 1; i < 8; i++)
227 {
228 if (c->auth_algs & (1 << i))
229 {
230 lua_pushstring(L, IWINFO_AUTH_NAMES[i]);
231 lua_rawseti(L, -2, j++);
232 }
233 }
234 lua_setfield(L, -2, "auth_algs");
235 }
236
237
238 /* Wrapper for assoclist */
239 static int iwinfo_L_assoclist(lua_State *L, int (*func)(const char *, char *, int *))
240 {
241 int i, len;
242 char rv[IWINFO_BUFSIZE];
243 char macstr[18];
244 const char *ifname = luaL_checkstring(L, 1);
245 struct iwinfo_assoclist_entry *e;
246
247 lua_newtable(L);
248 memset(rv, 0, sizeof(rv));
249
250 if (!(*func)(ifname, rv, &len))
251 {
252 for (i = 0; i < len; i += sizeof(struct iwinfo_assoclist_entry))
253 {
254 e = (struct iwinfo_assoclist_entry *) &rv[i];
255
256 sprintf(macstr, "%02X:%02X:%02X:%02X:%02X:%02X",
257 e->mac[0], e->mac[1], e->mac[2],
258 e->mac[3], e->mac[4], e->mac[5]);
259
260 lua_newtable(L);
261
262 lua_pushnumber(L, e->signal);
263 lua_setfield(L, -2, "signal");
264
265 lua_pushnumber(L, e->noise);
266 lua_setfield(L, -2, "noise");
267
268 lua_pushnumber(L, e->inactive);
269 lua_setfield(L, -2, "inactive");
270
271 lua_pushnumber(L, e->rx_packets);
272 lua_setfield(L, -2, "rx_packets");
273
274 lua_pushnumber(L, e->tx_packets);
275 lua_setfield(L, -2, "tx_packets");
276
277 lua_pushnumber(L, e->rx_rate.rate);
278 lua_setfield(L, -2, "rx_rate");
279
280 lua_pushnumber(L, e->tx_rate.rate);
281 lua_setfield(L, -2, "tx_rate");
282
283 if (e->rx_rate.mcs >= 0)
284 {
285 lua_pushnumber(L, e->rx_rate.mcs);
286 lua_setfield(L, -2, "rx_mcs");
287
288 lua_pushboolean(L, e->rx_rate.is_40mhz);
289 lua_setfield(L, -2, "rx_40mhz");
290
291 lua_pushboolean(L, e->rx_rate.is_short_gi);
292 lua_setfield(L, -2, "rx_short_gi");
293 }
294
295 if (e->tx_rate.mcs >= 0)
296 {
297 lua_pushnumber(L, e->tx_rate.mcs);
298 lua_setfield(L, -2, "tx_mcs");
299
300 lua_pushboolean(L, e->tx_rate.is_40mhz);
301 lua_setfield(L, -2, "tx_40mhz");
302
303 lua_pushboolean(L, e->tx_rate.is_short_gi);
304 lua_setfield(L, -2, "tx_short_gi");
305 }
306
307 lua_setfield(L, -2, macstr);
308 }
309 }
310
311 return 1;
312 }
313
314 /* Wrapper for tx power list */
315 static int iwinfo_L_txpwrlist(lua_State *L, int (*func)(const char *, char *, int *))
316 {
317 int i, x, len;
318 char rv[IWINFO_BUFSIZE];
319 const char *ifname = luaL_checkstring(L, 1);
320 struct iwinfo_txpwrlist_entry *e;
321
322 lua_newtable(L);
323 memset(rv, 0, sizeof(rv));
324
325 if (!(*func)(ifname, rv, &len))
326 {
327 for (i = 0, x = 1; i < len; i += sizeof(struct iwinfo_txpwrlist_entry), x++)
328 {
329 e = (struct iwinfo_txpwrlist_entry *) &rv[i];
330
331 lua_newtable(L);
332
333 lua_pushnumber(L, e->mw);
334 lua_setfield(L, -2, "mw");
335
336 lua_pushnumber(L, e->dbm);
337 lua_setfield(L, -2, "dbm");
338
339 lua_rawseti(L, -2, x);
340 }
341 }
342
343 return 1;
344 }
345
346 /* Wrapper for scan list */
347 static int iwinfo_L_scanlist(lua_State *L, int (*func)(const char *, char *, int *))
348 {
349 int i, x, len;
350 char rv[IWINFO_BUFSIZE];
351 char macstr[18];
352 const char *ifname = luaL_checkstring(L, 1);
353 struct iwinfo_scanlist_entry *e;
354
355 lua_newtable(L);
356 memset(rv, 0, sizeof(rv));
357
358 if (!(*func)(ifname, rv, &len))
359 {
360 for (i = 0, x = 1; i < len; i += sizeof(struct iwinfo_scanlist_entry), x++)
361 {
362 e = (struct iwinfo_scanlist_entry *) &rv[i];
363
364 lua_newtable(L);
365
366 /* BSSID */
367 sprintf(macstr, "%02X:%02X:%02X:%02X:%02X:%02X",
368 e->mac[0], e->mac[1], e->mac[2],
369 e->mac[3], e->mac[4], e->mac[5]);
370
371 lua_pushstring(L, macstr);
372 lua_setfield(L, -2, "bssid");
373
374 /* ESSID */
375 if (e->ssid[0])
376 {
377 lua_pushstring(L, (char *) e->ssid);
378 lua_setfield(L, -2, "ssid");
379 }
380
381 /* Channel */
382 lua_pushinteger(L, e->channel);
383 lua_setfield(L, -2, "channel");
384
385 /* Mode */
386 lua_pushstring(L, (char *) e->mode);
387 lua_setfield(L, -2, "mode");
388
389 /* Quality, Signal */
390 lua_pushinteger(L, e->quality);
391 lua_setfield(L, -2, "quality");
392
393 lua_pushinteger(L, e->quality_max);
394 lua_setfield(L, -2, "quality_max");
395
396 lua_pushnumber(L, (e->signal - 0x100));
397 lua_setfield(L, -2, "signal");
398
399 /* Crypto */
400 iwinfo_L_cryptotable(L, &e->crypto);
401 lua_setfield(L, -2, "encryption");
402
403 lua_rawseti(L, -2, x);
404 }
405 }
406
407 return 1;
408 }
409
410 /* Wrapper for frequency list */
411 static int iwinfo_L_freqlist(lua_State *L, int (*func)(const char *, char *, int *))
412 {
413 int i, x, len;
414 char rv[IWINFO_BUFSIZE];
415 const char *ifname = luaL_checkstring(L, 1);
416 struct iwinfo_freqlist_entry *e;
417
418 lua_newtable(L);
419 memset(rv, 0, sizeof(rv));
420
421 if (!(*func)(ifname, rv, &len))
422 {
423 for (i = 0, x = 1; i < len; i += sizeof(struct iwinfo_freqlist_entry), x++)
424 {
425 e = (struct iwinfo_freqlist_entry *) &rv[i];
426
427 lua_newtable(L);
428
429 /* MHz */
430 lua_pushinteger(L, e->mhz);
431 lua_setfield(L, -2, "mhz");
432
433 /* Channel */
434 lua_pushinteger(L, e->channel);
435 lua_setfield(L, -2, "channel");
436
437 /* Restricted (DFS/TPC/Radar) */
438 lua_pushboolean(L, e->restricted);
439 lua_setfield(L, -2, "restricted");
440
441 lua_rawseti(L, -2, x);
442 }
443 }
444
445 return 1;
446 }
447
448 /* Wrapper for crypto settings */
449 static int iwinfo_L_encryption(lua_State *L, int (*func)(const char *, char *))
450 {
451 const char *ifname = luaL_checkstring(L, 1);
452 struct iwinfo_crypto_entry c = { 0 };
453
454 if (!(*func)(ifname, (char *)&c))
455 {
456 iwinfo_L_cryptotable(L, &c);
457 return 1;
458 }
459
460 lua_pushnil(L);
461 return 1;
462 }
463
464 /* Wrapper for hwmode list */
465 static int iwinfo_L_hwmodelist(lua_State *L, int (*func)(const char *, int *))
466 {
467 const char *ifname = luaL_checkstring(L, 1);
468 int hwmodes = 0;
469
470 if (!(*func)(ifname, &hwmodes))
471 {
472 lua_newtable(L);
473
474 lua_pushboolean(L, hwmodes & IWINFO_80211_A);
475 lua_setfield(L, -2, "a");
476
477 lua_pushboolean(L, hwmodes & IWINFO_80211_B);
478 lua_setfield(L, -2, "b");
479
480 lua_pushboolean(L, hwmodes & IWINFO_80211_G);
481 lua_setfield(L, -2, "g");
482
483 lua_pushboolean(L, hwmodes & IWINFO_80211_N);
484 lua_setfield(L, -2, "n");
485
486 return 1;
487 }
488
489 lua_pushnil(L);
490 return 1;
491 }
492
493 /* Wrapper for mbssid_support */
494 static int iwinfo_L_mbssid_support(lua_State *L, int (*func)(const char *, int *))
495 {
496 const char *ifname = luaL_checkstring(L, 1);
497 int support = 0;
498
499 if (!(*func)(ifname, &support))
500 {
501 lua_pushboolean(L, support);
502 return 1;
503 }
504
505 lua_pushnil(L);
506 return 1;
507 }
508
509 /* Wrapper for hardware_id */
510 static int iwinfo_L_hardware_id(lua_State *L, int (*func)(const char *, char *))
511 {
512 const char *ifname = luaL_checkstring(L, 1);
513 struct iwinfo_hardware_id ids;
514
515 if (!(*func)(ifname, (char *)&ids))
516 {
517 lua_newtable(L);
518
519 lua_pushnumber(L, ids.vendor_id);
520 lua_setfield(L, -2, "vendor_id");
521
522 lua_pushnumber(L, ids.device_id);
523 lua_setfield(L, -2, "device_id");
524
525 lua_pushnumber(L, ids.subsystem_vendor_id);
526 lua_setfield(L, -2, "subsystem_vendor_id");
527
528 lua_pushnumber(L, ids.subsystem_device_id);
529 lua_setfield(L, -2, "subsystem_device_id");
530 }
531 else
532 {
533 lua_pushnil(L);
534 }
535
536 return 1;
537 }
538
539 /* Wrapper for country list */
540 static char * iwinfo_L_country_lookup(char *buf, int len, int iso3166)
541 {
542 int i;
543 struct iwinfo_country_entry *c;
544
545 for (i = 0; i < len; i += sizeof(struct iwinfo_country_entry))
546 {
547 c = (struct iwinfo_country_entry *) &buf[i];
548
549 if (c->iso3166 == iso3166)
550 return c->ccode;
551 }
552
553 return NULL;
554 }
555
556 static int iwinfo_L_countrylist(lua_State *L, int (*func)(const char *, char *, int *))
557 {
558 int len, i, j;
559 char rv[IWINFO_BUFSIZE], alpha2[3];
560 char *ccode;
561 const char *ifname = luaL_checkstring(L, 1);
562 const struct iwinfo_iso3166_label *l;
563
564 lua_newtable(L);
565 memset(rv, 0, sizeof(rv));
566
567 if (!(*func)(ifname, rv, &len))
568 {
569 for (l = IWINFO_ISO3166_NAMES, j = 1; l->iso3166; l++)
570 {
571 if ((ccode = iwinfo_L_country_lookup(rv, len, l->iso3166)) != NULL)
572 {
573 sprintf(alpha2, "%c%c",
574 (l->iso3166 / 256), (l->iso3166 % 256));
575
576 lua_newtable(L);
577
578 lua_pushstring(L, alpha2);
579 lua_setfield(L, -2, "alpha2");
580
581 lua_pushstring(L, ccode);
582 lua_setfield(L, -2, "ccode");
583
584 lua_pushstring(L, l->name);
585 lua_setfield(L, -2, "name");
586
587 lua_rawseti(L, -2, j++);
588 }
589 }
590 }
591
592 return 1;
593 }
594
595
596 #ifdef USE_WL
597 /* Broadcom */
598 LUA_WRAP_INT(wl,channel)
599 LUA_WRAP_INT(wl,frequency)
600 LUA_WRAP_INT(wl,frequency_offset)
601 LUA_WRAP_INT(wl,txpower)
602 LUA_WRAP_INT(wl,txpower_offset)
603 LUA_WRAP_INT(wl,bitrate)
604 LUA_WRAP_INT(wl,signal)
605 LUA_WRAP_INT(wl,noise)
606 LUA_WRAP_INT(wl,quality)
607 LUA_WRAP_INT(wl,quality_max)
608 LUA_WRAP_STRING(wl,mode)
609 LUA_WRAP_STRING(wl,ssid)
610 LUA_WRAP_STRING(wl,bssid)
611 LUA_WRAP_STRING(wl,country)
612 LUA_WRAP_STRING(wl,hardware_name)
613 LUA_WRAP_STRUCT(wl,assoclist)
614 LUA_WRAP_STRUCT(wl,txpwrlist)
615 LUA_WRAP_STRUCT(wl,scanlist)
616 LUA_WRAP_STRUCT(wl,freqlist)
617 LUA_WRAP_STRUCT(wl,countrylist)
618 LUA_WRAP_STRUCT(wl,hwmodelist)
619 LUA_WRAP_STRUCT(wl,encryption)
620 LUA_WRAP_STRUCT(wl,mbssid_support)
621 LUA_WRAP_STRUCT(wl,hardware_id)
622 #endif
623
624 #ifdef USE_MADWIFI
625 /* Madwifi */
626 LUA_WRAP_INT(madwifi,channel)
627 LUA_WRAP_INT(madwifi,frequency)
628 LUA_WRAP_INT(madwifi,frequency_offset)
629 LUA_WRAP_INT(madwifi,txpower)
630 LUA_WRAP_INT(madwifi,txpower_offset)
631 LUA_WRAP_INT(madwifi,bitrate)
632 LUA_WRAP_INT(madwifi,signal)
633 LUA_WRAP_INT(madwifi,noise)
634 LUA_WRAP_INT(madwifi,quality)
635 LUA_WRAP_INT(madwifi,quality_max)
636 LUA_WRAP_STRING(madwifi,mode)
637 LUA_WRAP_STRING(madwifi,ssid)
638 LUA_WRAP_STRING(madwifi,bssid)
639 LUA_WRAP_STRING(madwifi,country)
640 LUA_WRAP_STRING(madwifi,hardware_name)
641 LUA_WRAP_STRUCT(madwifi,assoclist)
642 LUA_WRAP_STRUCT(madwifi,txpwrlist)
643 LUA_WRAP_STRUCT(madwifi,scanlist)
644 LUA_WRAP_STRUCT(madwifi,freqlist)
645 LUA_WRAP_STRUCT(madwifi,countrylist)
646 LUA_WRAP_STRUCT(madwifi,hwmodelist)
647 LUA_WRAP_STRUCT(madwifi,encryption)
648 LUA_WRAP_STRUCT(madwifi,mbssid_support)
649 LUA_WRAP_STRUCT(madwifi,hardware_id)
650 #endif
651
652 #ifdef USE_NL80211
653 /* NL80211 */
654 LUA_WRAP_INT(nl80211,channel)
655 LUA_WRAP_INT(nl80211,frequency)
656 LUA_WRAP_INT(nl80211,frequency_offset)
657 LUA_WRAP_INT(nl80211,txpower)
658 LUA_WRAP_INT(nl80211,txpower_offset)
659 LUA_WRAP_INT(nl80211,bitrate)
660 LUA_WRAP_INT(nl80211,signal)
661 LUA_WRAP_INT(nl80211,noise)
662 LUA_WRAP_INT(nl80211,quality)
663 LUA_WRAP_INT(nl80211,quality_max)
664 LUA_WRAP_STRING(nl80211,mode)
665 LUA_WRAP_STRING(nl80211,ssid)
666 LUA_WRAP_STRING(nl80211,bssid)
667 LUA_WRAP_STRING(nl80211,country)
668 LUA_WRAP_STRING(nl80211,hardware_name)
669 LUA_WRAP_STRUCT(nl80211,assoclist)
670 LUA_WRAP_STRUCT(nl80211,txpwrlist)
671 LUA_WRAP_STRUCT(nl80211,scanlist)
672 LUA_WRAP_STRUCT(nl80211,freqlist)
673 LUA_WRAP_STRUCT(nl80211,countrylist)
674 LUA_WRAP_STRUCT(nl80211,hwmodelist)
675 LUA_WRAP_STRUCT(nl80211,encryption)
676 LUA_WRAP_STRUCT(nl80211,mbssid_support)
677 LUA_WRAP_STRUCT(nl80211,hardware_id)
678 #endif
679
680 /* Wext */
681 LUA_WRAP_INT(wext,channel)
682 LUA_WRAP_INT(wext,frequency)
683 LUA_WRAP_INT(wext,frequency_offset)
684 LUA_WRAP_INT(wext,txpower)
685 LUA_WRAP_INT(wext,txpower_offset)
686 LUA_WRAP_INT(wext,bitrate)
687 LUA_WRAP_INT(wext,signal)
688 LUA_WRAP_INT(wext,noise)
689 LUA_WRAP_INT(wext,quality)
690 LUA_WRAP_INT(wext,quality_max)
691 LUA_WRAP_STRING(wext,mode)
692 LUA_WRAP_STRING(wext,ssid)
693 LUA_WRAP_STRING(wext,bssid)
694 LUA_WRAP_STRING(wext,country)
695 LUA_WRAP_STRING(wext,hardware_name)
696 LUA_WRAP_STRUCT(wext,assoclist)
697 LUA_WRAP_STRUCT(wext,txpwrlist)
698 LUA_WRAP_STRUCT(wext,scanlist)
699 LUA_WRAP_STRUCT(wext,freqlist)
700 LUA_WRAP_STRUCT(wext,countrylist)
701 LUA_WRAP_STRUCT(wext,hwmodelist)
702 LUA_WRAP_STRUCT(wext,encryption)
703 LUA_WRAP_STRUCT(wext,mbssid_support)
704 LUA_WRAP_STRUCT(wext,hardware_id)
705
706 #ifdef USE_WL
707 /* Broadcom table */
708 static const luaL_reg R_wl[] = {
709 LUA_REG(wl,channel),
710 LUA_REG(wl,frequency),
711 LUA_REG(wl,frequency_offset),
712 LUA_REG(wl,txpower),
713 LUA_REG(wl,txpower_offset),
714 LUA_REG(wl,bitrate),
715 LUA_REG(wl,signal),
716 LUA_REG(wl,noise),
717 LUA_REG(wl,quality),
718 LUA_REG(wl,quality_max),
719 LUA_REG(wl,mode),
720 LUA_REG(wl,ssid),
721 LUA_REG(wl,bssid),
722 LUA_REG(wl,country),
723 LUA_REG(wl,assoclist),
724 LUA_REG(wl,txpwrlist),
725 LUA_REG(wl,scanlist),
726 LUA_REG(wl,freqlist),
727 LUA_REG(wl,countrylist),
728 LUA_REG(wl,hwmodelist),
729 LUA_REG(wl,encryption),
730 LUA_REG(wl,mbssid_support),
731 LUA_REG(wl,hardware_id),
732 LUA_REG(wl,hardware_name),
733 { NULL, NULL }
734 };
735 #endif
736
737 #ifdef USE_MADWIFI
738 /* Madwifi table */
739 static const luaL_reg R_madwifi[] = {
740 LUA_REG(madwifi,channel),
741 LUA_REG(madwifi,frequency),
742 LUA_REG(madwifi,frequency_offset),
743 LUA_REG(madwifi,txpower),
744 LUA_REG(madwifi,txpower_offset),
745 LUA_REG(madwifi,bitrate),
746 LUA_REG(madwifi,signal),
747 LUA_REG(madwifi,noise),
748 LUA_REG(madwifi,quality),
749 LUA_REG(madwifi,quality_max),
750 LUA_REG(madwifi,mode),
751 LUA_REG(madwifi,ssid),
752 LUA_REG(madwifi,bssid),
753 LUA_REG(madwifi,country),
754 LUA_REG(madwifi,assoclist),
755 LUA_REG(madwifi,txpwrlist),
756 LUA_REG(madwifi,scanlist),
757 LUA_REG(madwifi,freqlist),
758 LUA_REG(madwifi,countrylist),
759 LUA_REG(madwifi,hwmodelist),
760 LUA_REG(madwifi,encryption),
761 LUA_REG(madwifi,mbssid_support),
762 LUA_REG(madwifi,hardware_id),
763 LUA_REG(madwifi,hardware_name),
764 { NULL, NULL }
765 };
766 #endif
767
768 #ifdef USE_NL80211
769 /* NL80211 table */
770 static const luaL_reg R_nl80211[] = {
771 LUA_REG(nl80211,channel),
772 LUA_REG(nl80211,frequency),
773 LUA_REG(nl80211,frequency_offset),
774 LUA_REG(nl80211,txpower),
775 LUA_REG(nl80211,txpower_offset),
776 LUA_REG(nl80211,bitrate),
777 LUA_REG(nl80211,signal),
778 LUA_REG(nl80211,noise),
779 LUA_REG(nl80211,quality),
780 LUA_REG(nl80211,quality_max),
781 LUA_REG(nl80211,mode),
782 LUA_REG(nl80211,ssid),
783 LUA_REG(nl80211,bssid),
784 LUA_REG(nl80211,country),
785 LUA_REG(nl80211,assoclist),
786 LUA_REG(nl80211,txpwrlist),
787 LUA_REG(nl80211,scanlist),
788 LUA_REG(nl80211,freqlist),
789 LUA_REG(nl80211,countrylist),
790 LUA_REG(nl80211,hwmodelist),
791 LUA_REG(nl80211,encryption),
792 LUA_REG(nl80211,mbssid_support),
793 LUA_REG(nl80211,hardware_id),
794 LUA_REG(nl80211,hardware_name),
795 { NULL, NULL }
796 };
797 #endif
798
799 /* Wext table */
800 static const luaL_reg R_wext[] = {
801 LUA_REG(wext,channel),
802 LUA_REG(wext,frequency),
803 LUA_REG(wext,frequency_offset),
804 LUA_REG(wext,txpower),
805 LUA_REG(wext,txpower_offset),
806 LUA_REG(wext,bitrate),
807 LUA_REG(wext,signal),
808 LUA_REG(wext,noise),
809 LUA_REG(wext,quality),
810 LUA_REG(wext,quality_max),
811 LUA_REG(wext,mode),
812 LUA_REG(wext,ssid),
813 LUA_REG(wext,bssid),
814 LUA_REG(wext,country),
815 LUA_REG(wext,assoclist),
816 LUA_REG(wext,txpwrlist),
817 LUA_REG(wext,scanlist),
818 LUA_REG(wext,freqlist),
819 LUA_REG(wext,countrylist),
820 LUA_REG(wext,hwmodelist),
821 LUA_REG(wext,encryption),
822 LUA_REG(wext,mbssid_support),
823 LUA_REG(wext,hardware_id),
824 LUA_REG(wext,hardware_name),
825 { NULL, NULL }
826 };
827
828 /* Common */
829 static const luaL_reg R_common[] = {
830 { "type", iwinfo_L_type },
831 { "__gc", iwinfo_L__gc },
832 { NULL, NULL }
833 };
834
835
836 LUALIB_API int luaopen_iwinfo(lua_State *L) {
837 luaL_register(L, IWINFO_META, R_common);
838
839 #ifdef USE_WL
840 luaL_newmetatable(L, IWINFO_WL_META);
841 luaL_register(L, NULL, R_wl);
842 lua_pushvalue(L, -1);
843 lua_setfield(L, -2, "__index");
844 lua_setfield(L, -2, "wl");
845 #endif
846
847 #ifdef USE_MADWIFI
848 luaL_newmetatable(L, IWINFO_MADWIFI_META);
849 luaL_register(L, NULL, R_madwifi);
850 lua_pushvalue(L, -1);
851 lua_setfield(L, -2, "__index");
852 lua_setfield(L, -2, "madwifi");
853 #endif
854
855 #ifdef USE_NL80211
856 luaL_newmetatable(L, IWINFO_NL80211_META);
857 luaL_register(L, NULL, R_nl80211);
858 lua_pushvalue(L, -1);
859 lua_setfield(L, -2, "__index");
860 lua_setfield(L, -2, "nl80211");
861 #endif
862
863 luaL_newmetatable(L, IWINFO_WEXT_META);
864 luaL_register(L, NULL, R_wext);
865 lua_pushvalue(L, -1);
866 lua_setfield(L, -2, "__index");
867 lua_setfield(L, -2, "wext");
868
869 return 1;
870 }